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T J Cumbo

Publications and source records attributed to T J Cumbo.

22 records · Page 2Linked to original sources

Tissue persistence of gentamicin in man.

A two-compartment pharmcokinetic model was used to caracterize serum concentrations and to predict tissue accumulation of gentamicin in 47 treated patients. Postmortem tissues were obtained in six cases; in each instance, tissues yielded the predicted amount of drug. Slow release of tissue-bound gentamicin accounts for its prolonged retention in the body. The two-compartment model adequately predicts gentamicin accumulation from serum concentrations and explains why this antibiotic persists in serum and urine.

Adult↗

Changes in antimicrobial agent usage resulting from interactions among clinical pharmacy, the infectious disease division, and the microbiology laboratory.

Rapid reporting of culture and susceptibility data is the first of several important steps in the successful management of infected patients. As has been said many times, rapidly reported data are of little value unless the patient directly benefits. Benefit requires better overall communication and an action plan linked to timely use of these results. In 1989 the Millard Fillmore Hospital Antibiotic Review Committee developed and implemented a prototype approach to hospital wide antimicrobial management. The formulary was revised and the drug use evaluation process modified to enhance effectiveness and to lower the cost of therapy and inventory. Clinical pharmacy antimicrobial agent management specialists were then recruited to individualize patient treatments to the isolated pathogens in conjunction with the Division of Infectious Diseases. To provide the clinical pharmacy specialists with rapid and clinically useful information, a real-time computer link was created between the pharmacy (antibiotic orders) and the microbiology laboratory (culture results). Customized software was implemented to screen all patients automatically for mismatches between pathogens and drugs, or to screen for doses inappropriate to minimum inhibitory concentration or renal function. Special attention was paid to identification of opportunities to target a more appropriate narrow-spectrum regimen after culture results became available. Changes in antimicrobial regimen or dosage were made by contacting the prescribing physician. Over 90% of the recommended changes were made, and virtually all changed regimens had satisfactory clinical outcome. Real dollar expenditures for antimicrobial agents declined by > $200,000 per year. Prior to the institution of this computerized clinical management strategy, antimicrobial purchases were rising yearly at the rate of 12%-15%. The combined efforts of clinical pharmacy, microbiology, and infectious disease personnel successfully optimized antimicrobial therapy on a hospital wide basis. Antimicrobial agent optimization improved patient outcome, and the cost savings more than covered the costs of the program personnel and software.

Anti-Bacterial Agents↗

Mathematical examination of dual individualization principles (II): The rate of bacterial eradication at the same area under the inhibitory curve is more rapid for ciprofloxacin than for cefmenoxime.

OBJECTIVE: To compare two antibiotics at equal ranges of area under the inhibitory curve (AUIC) exposure to determine if the rate of bacterial eradication differed between these antibiotics. DESIGN: Retrospective comparison of two previously collected studies of similar patients with nosocomial pneumonia. SETTING: Hospitalized patients, most intubated in critical care units with nosocomial pneumonia. PARTICIPANTS: Patients treated with either i.v. ciprofloxacin (n = 74) or the i.v. third-generation cephalosporin cefmenoxime (n = 43) were compared for their length of treatment required to eradicate bacterial pathogens from their respective infection sites, using serial cultures from the site of infection. All patients were also assessed for clinical outcomes. Serum samples were obtained to evaluate individual patient antibiotic pharmacokinetics, which were used to model pharmacodynamics of response. The HPLC assay used for each antibiotic had interday coefficients of variation < 10 percent. Serum concentration versus time profiles were fit using the computer program ADAPT II to determine pharmacokinetic parameters for each patient. The primary drug exposure measure that related to response was the AUIC, calculated as steady-state AUC0-24/minimum inhibitory concentration. RESULTS: AUIC values in the patients ranged from 6.0 to more than 7000, yet the AUIC value was highly predictive of time to bacterial eradication (p < 0.001). Although more than 75 percent of patients eventually achieved eradication of pathogens from tracheal aspirate cultures, ciprofloxacin and cefmenoxime differed significantly in the time required to sterilize these cultures. At appropriate AUIC values (> 250) for ciprofloxacin, the median time to eradication was two days, while cefmenoxime (also at AUIC values > 250) required six days to achieve the same result. CONCLUSIONS: We conclude that the more rapid in vitro bacterial killing, which is characteristic of ciprofloxacin at optimal AUIC values, can manifest in vivo as more rapid clearance of bacteria from the respiratory tract of patients, even when both agents are controlled for initial antibacterial exposure (i.e., same AUIC).

Anti-Bacterial Agents↗